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block line
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  “block line”译为未确定词的双语例句
     3 Dimensional Simulation for Block Line Generation in Magnetic Bubble Domain Head
     磁泡条畴头 Bloch 线产生的三维模拟
短句来源
     Then the general algorithms of symbol drawing is introduced, a circulating block line entity drawing algorithms and a polygon entity fill algorithms based on seed fill are developed.
     接着对地图符号在GIS系统中绘制空间实体的通用算法进行介绍,并在此基础上提出基于装饰模式的线符号的循环块算法和改进种子填充的面符号填充算法。
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  相似匹配句对
     On line
     行业在线
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     On-line
     行业在线
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     Block and Z.
     B lock和Z.
短句来源
     The Management of the Costs of the Power Line Block
     输电线路阻塞费用的管理
短句来源
     Elimination of esterificaion column for block in PET line
     聚酯装置中酯化塔堵塞的消除
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  block line
Trench tamping for high-voltage automatic-block line footings in transport construction
      
For low Capture Block line counts, PC processing limits the maximum frame rate.
      
Altogether five coding modes including spatial and temporal subsampling are provided, which can be selected on a block, block-line or field basis.
      
You need not execute a subroutine block line by line.
      


The latest information in the study of magnetic bubble is reported in this article, complicated twists can be produced by using added magnetic fields for controlling the domain walls. Certain small areas in which the magnetic lines point vertically to the film surface are created. They are known as vertical Block lines (or VBL's). The most dense computer memory can be manufactured with these Bloch lines in pairs. Since the information in Block lines is stored in codes, not in the magnetic...

The latest information in the study of magnetic bubble is reported in this article, complicated twists can be produced by using added magnetic fields for controlling the domain walls. Certain small areas in which the magnetic lines point vertically to the film surface are created. They are known as vertical Block lines (or VBL's). The most dense computer memory can be manufactured with these Bloch lines in pairs. Since the information in Block lines is stored in codes, not in the magnetic bubbles, the limit of information density per square centimeter can reach 10 billion bits. It just takes 2/1000 second to retrieve the information stored in Block lines memory, while it takes 10 seconds for ordinary computers.

本文报告了最新重要科技信息.利用外加磁场控制布洛赫畴壁(简记BL)可产生磁化矢量复杂扭转.其中能形成一些磁化方向垂直指向膜面的小区域.称为垂直布洛赫线(或VBL).利用这些成对的布洛赫线,可以制成存储密度极高的计算机存储器,因为信息是在布洛赫线内被编码寄存的,而不是在磁泡本身内.因此,极限信息密度可达到10~(10)bit/cm~2,从布洛赫线存储器中检索信息只需要约2/1000s、而目前检索信息要10s.

In this paper, an implicit and upwind incremental Block -Line- Gauss -Seidel Method is developed for solving compressible Navier Stokes equations in the Body-Fitted coordinate system. The computational solutions of the internal compressible turbulence flow have been obtained by the method with a two -layer eddy viscosity model employing a Baldwin -Lomax algebraic turbulece model. Numerical experiments show that the computational procedure is of good stability and convergence. Numerical results of...

In this paper, an implicit and upwind incremental Block -Line- Gauss -Seidel Method is developed for solving compressible Navier Stokes equations in the Body-Fitted coordinate system. The computational solutions of the internal compressible turbulence flow have been obtained by the method with a two -layer eddy viscosity model employing a Baldwin -Lomax algebraic turbulece model. Numerical experiments show that the computational procedure is of good stability and convergence. Numerical results of the Poissuil flow and Couette flow are good agreement with its analytic solution and computational results of flows in S -Shaped channel with different wall curvature are satisfactorily.

在这篇文章里,我们提出了一个二阶隐式迎风的增量迭代法,用以离散BFC(Body—Fitted Coordinates)坐标变换下的Navier—Stokes方程。使用这种算法结合Lomax两层代数湍流模型数值求解了S形进气道内的可压缩湍流。数值实验表明:计算过程具有较好的稳定性和收敛性。二维Poissuil流动和Couette流动的计算结果和精确解符合良好,两种壁面曲率不同的S形进气道内流场的计算结果也是令人满意的。

Based on the Beam-Warming scheme, the flux-splitting method and the block-line-Gauss-Seidel technique, an implicit finite difference method with the second-order accuracy is developed for the numerical solutions of the compressible Navier-Stokes equations in a general curvilinear coordinate system. The algorithm can remldy the errors caused by the approximate factorization and deal with the viscous terms reasonably. The computational results of the Poissuill flow and the Couette flow are in a good...

Based on the Beam-Warming scheme, the flux-splitting method and the block-line-Gauss-Seidel technique, an implicit finite difference method with the second-order accuracy is developed for the numerical solutions of the compressible Navier-Stokes equations in a general curvilinear coordinate system. The algorithm can remldy the errors caused by the approximate factorization and deal with the viscous terms reasonably. The computational results of the Poissuill flow and the Couette flow are in a good agreement with analysis solutions and the comparison between experimental results and the numerical solutions of the internal flow in a S-shaped duct is satisfactory.

本文在Beam-Warming格式的基础上,引入通量分裂的概念,应用行高斯迭代技术提出了一个二阶隐式的求解BFC坐标变换下的N-S方程的增量迭代法。它消除了因式分解带来的寄生误差,合理地处理了控制方程中的粘性项,具有较好的收敛性和稳定性。二维Poissuill流动和Couette流动的计算结果和精确解吻合良好。S形进气道的数值解反映出的现象和实验结果是一致的。

 
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